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A Rapid and Efficient Route to Preparation of Isocyanate Microcapsules

机译:快速高效地制备异氰酸酯微胶囊的途径

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In this paper, polyaryl polymethylene isocyanates (PAPI) were used as an innovative alternative material to prepare isocyanate microcapsules. PAPI could be used as core materials, which would react with small molecules containing active hydrogen (1,4-butanediol, ethylene glycol, 1,2-diaminoethane etc.). The reaction products of PAPI and active hydrogen would form a shell by interfacial polymerization reaction in an oil-in-water emulsion. Smooth spherical microcapsules of 70 ~ 180 μm in diameter were produced by controlling agitation rate (600 ~ 1200 rpm). High yields (~80%) of a free-flowing powder of PAPI/polyurethane and polyurea capsules were produced with a high isocyanate groups (–NCO) content of 23 wt % as determined by titration analysis. Structural analysis and quality assessments of each batch of microcapsules were performed by using thermogravimetric analysis, Fourier transform infrared spectroscopy and scanning electron microscopy. Preliminary results indicated the microcapsules were stable with only about 20% loss of –NCO detected after one month storage under ambient conditions. This work showed the great potential of novel microencapsulation technique in development of protection of –NCO and in aspects of micro- and nano-structure construction materials.
机译:在本文中,聚芳基多亚甲基异氰酸酯(PAPI)被用作制备异氰酸酯微胶囊的创新替代材料。 PAPI可用作核心材料,可与含有活性氢的小分子(1,4-丁二醇,乙二醇,1,2-二氨基乙烷等)反应。 PAPI和活性氢的反应产物将在水包油乳液中通过界面聚合反应形成壳。通过控制搅拌速度(600〜1200 rpm),生产出直径为70〜180μm的光滑球形微囊。通过滴定分析确定,高产率(〜80%)的PAPI /聚氨酯和聚脲胶囊的自由流动粉末具有23 wt%的高异氰酸酯基团(–NCO)含量。通过使用热重分析,傅里叶变换红外光谱和扫描电子显微镜对每批微胶囊进行结构分析和质量评估。初步结果表明,微胶囊是稳定的,在环境条件下保存一个月后,仅检测到–NCO损失约20%。这项工作显示了新型微囊化技术在保护–NCO以及微结构和纳米结构建筑材料方面的巨大潜力。

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